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三维环境中细胞外基质的重组建模。

Modeling extracellular matrix reorganization in 3D environments.

机构信息

Department of Biomedical Engineering, Boston University, Boston, MA, USA.

出版信息

PLoS One. 2013;8(1):e52509. doi: 10.1371/journal.pone.0052509. Epub 2013 Jan 14.

Abstract

Extracellular matrix (ECM) remodeling is a key physiological process that occurs in a number of contexts, including cell migration, and is especially important for cellular form and function in three-dimensional (3D) matrices. However, there have been few attempts to computationally model how cells modify their environment in a manner that accounts for both cellular properties and the architecture of the surrounding ECM. To this end, we have developed and validated a novel model to simulate matrix remodeling that explicitly defines cells in a 3D collagenous matrix. In our simulation, cells can degrade, deposit, or pull on local fibers, depending on the fiber density around each cell. The cells can also move within the 3D matrix. Different cell phenotypes can be modeled by varying key cellular parameters. Using the model we have studied how two model cancer cell lines, of differing invasiveness, modify matrices with varying fiber density in their vicinity by tracking the metric of fraction of matrix occupied by fibers. Our results quantitatively demonstrate that in low density environments, cells deposit more collagen to uniformly increase fibril fraction. On the other hand, in higher density environments, the less invasive model cell line reduced the fibril fraction as compared to the highly invasive phenotype. These results show good qualitative and quantitative agreement with existing experimental literature. Our simulation is therefore able to function as a novel platform to provide new insights into the clinically relevant and physiologically critical process of matrix remodeling by helping identify critical parameters that dictate cellular behavior in complex native-like environments.

摘要

细胞外基质(ECM)重塑是一种重要的生理过程,发生在许多情况下,包括细胞迁移,并且对于三维(3D)基质中的细胞形态和功能尤为重要。然而,很少有尝试从计算角度来模拟细胞如何以考虑细胞特性和周围 ECM 结构的方式来修饰其环境。为此,我们开发并验证了一种新颖的模型来模拟基质重塑,该模型明确定义了 3D 胶原基质中的细胞。在我们的模拟中,细胞可以根据每个细胞周围的纤维密度降解、沉积或拉动局部纤维。细胞还可以在 3D 基质中移动。不同的细胞表型可以通过改变关键细胞参数来建模。使用该模型,我们研究了两种不同侵袭性的模型癌细胞系如何通过跟踪纤维占据基质的比例来修饰附近具有不同纤维密度的基质。我们的结果定量表明,在低密度环境中,细胞会沉积更多的胶原蛋白以均匀增加原纤维分数。另一方面,在较高密度的环境中,与高侵袭性表型相比,侵袭性较低的模型细胞系降低了原纤维分数。这些结果与现有的实验文献具有良好的定性和定量一致性。因此,我们的模拟可以作为一个新的平台,通过帮助确定在复杂的天然环境中决定细胞行为的关键参数,为基质重塑这一具有临床相关性和生理关键性的过程提供新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3893/3544844/de23d3aa3775/pone.0052509.g002.jpg

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